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John W Weisel

Showing results (51-60 of 226) with videos related to

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Current Opinion in Biomedical Engineering|April 7, 2022
Computational Biomechanical Modeling of Fibrin Networks and Platelet-Fiber Network InteractionsFrancesco Pancaldi, Oleg V Kim, John W Weisel, et al.
Circulation|January 19, 2006
Images in cardiovascular medicine. Architecture of intracoronary thrombi in ST-elevation acute myocardial infarction: time makes the differenceFarzin Beygui, Jean-Philippe Collet, Chandrasekaran Nagaswami, et al.
Biomaterials|May 21, 2014
Structural basis for the nonlinear mechanics of fibrin networks under compressionOleg V Kim, Rustem I Litvinov, John W Weisel, et al.
Nature Communications|November 4, 2017
Quantitative structural mechanobiology of platelet-driven blood clot contractionOleg V Kim, Rustem I Litvinov, Mark S Alber, et al.
Biochemistry|December 6, 2006
Interactions mediated by the N-terminus of fibrinogen's Bbeta chainOleg V Gorkun, Rustem I Litvinov, Yuri I Veklich, et al.
Biophysical Journal|September 27, 2012
The α-helix to β-sheet transition in stretched and compressed hydrated fibrin clotsRustem I Litvinov, Dzhigangir A Faizullin, Yuriy F Zuev, et al.
Blood|March 11, 2011
Flow-dependent channel formation in clots by an erythrocyte-bound fibrinolytic agentKathryn C Gersh, Sergei Zaitsev, Douglas B Cines, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 22, 2005
The elasticity of an individual fibrin fiber in a clotJean-Philippe Collet, Henry Shuman, Robert E Ledger, et al.
Biophysical Journal|March 4, 2017
Interplay of Platelet Contractility and Elasticity of Fibrin/Erythrocytes in Blood Clot RetractionValerie Tutwiler, Hailong Wang, Rustem I Litvinov, et al.
Biophysical Journal|August 5, 2022
Effects of clot contraction on clot degradation: A mathematical and experimental approachRebecca A Risman, Ahmed Abdelhamid, John W Weisel, et al.
Pageof 23

Showing results (51-60 of 226) with videos related to

Sort By:
Pageof 23
Current Opinion in Biomedical Engineering|April 7, 2022
Computational Biomechanical Modeling of Fibrin Networks and Platelet-Fiber Network InteractionsFrancesco Pancaldi, Oleg V Kim, John W Weisel, et al.
Circulation|January 19, 2006
Images in cardiovascular medicine. Architecture of intracoronary thrombi in ST-elevation acute myocardial infarction: time makes the differenceFarzin Beygui, Jean-Philippe Collet, Chandrasekaran Nagaswami, et al.
Biomaterials|May 21, 2014
Structural basis for the nonlinear mechanics of fibrin networks under compressionOleg V Kim, Rustem I Litvinov, John W Weisel, et al.
Nature Communications|November 4, 2017
Quantitative structural mechanobiology of platelet-driven blood clot contractionOleg V Kim, Rustem I Litvinov, Mark S Alber, et al.
Biochemistry|December 6, 2006
Interactions mediated by the N-terminus of fibrinogen's Bbeta chainOleg V Gorkun, Rustem I Litvinov, Yuri I Veklich, et al.
Biophysical Journal|September 27, 2012
The α-helix to β-sheet transition in stretched and compressed hydrated fibrin clotsRustem I Litvinov, Dzhigangir A Faizullin, Yuriy F Zuev, et al.
Blood|March 11, 2011
Flow-dependent channel formation in clots by an erythrocyte-bound fibrinolytic agentKathryn C Gersh, Sergei Zaitsev, Douglas B Cines, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 22, 2005
The elasticity of an individual fibrin fiber in a clotJean-Philippe Collet, Henry Shuman, Robert E Ledger, et al.
Biophysical Journal|March 4, 2017
Interplay of Platelet Contractility and Elasticity of Fibrin/Erythrocytes in Blood Clot RetractionValerie Tutwiler, Hailong Wang, Rustem I Litvinov, et al.
Biophysical Journal|August 5, 2022
Effects of clot contraction on clot degradation: A mathematical and experimental approachRebecca A Risman, Ahmed Abdelhamid, John W Weisel, et al.
Pageof 23